Added an unknown VxD error code.
[wine] / win32 / device.c
1 /*
2  * Win32 device functions
3  *
4  * Copyright 1998 Marcus Meissner
5  * Copyright 1998 Ulrich Weigand
6  * Copyright 1998 Patrik Stridvall
7  *
8  */
9
10 #include "config.h"
11
12 #include <stdlib.h>
13 #include <unistd.h>
14 #include <sys/types.h>
15 #include <string.h>
16 #include <stdarg.h>
17 #include <time.h>
18 #include "wine/port.h"
19 #include "windef.h"
20 #include "winbase.h"
21 #include "winreg.h"
22 #include "winerror.h"
23 #include "file.h"
24 #include "heap.h"
25 #include "winioctl.h"
26 #include "winnt.h"
27 #include "msdos.h"
28 #include "miscemu.h"
29 #include "stackframe.h"
30 #include "server.h"
31 #include "debugtools.h"
32
33 DEFAULT_DEBUG_CHANNEL(win32);
34
35
36 static BOOL DeviceIo_VTDAPI(DWORD dwIoControlCode, 
37                               LPVOID lpvInBuffer, DWORD cbInBuffer,
38                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
39                               LPDWORD lpcbBytesReturned,
40                               LPOVERLAPPED lpOverlapped);
41 static BOOL DeviceIo_MONODEBG(DWORD dwIoControlCode, 
42                               LPVOID lpvInBuffer, DWORD cbInBuffer,
43                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
44                               LPDWORD lpcbBytesReturned,
45                               LPOVERLAPPED lpOverlapped);
46 static BOOL DeviceIo_MMDEVLDR(DWORD dwIoControlCode, 
47                               LPVOID lpvInBuffer, DWORD cbInBuffer,
48                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
49                               LPDWORD lpcbBytesReturned,
50                               LPOVERLAPPED lpOverlapped);
51
52 static DWORD VxDCall_VMM( DWORD service, CONTEXT86 *context );
53
54 static BOOL DeviceIo_IFSMgr(DWORD dwIoControlCode, 
55                               LPVOID lpvInBuffer, DWORD cbInBuffer,
56                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
57                               LPDWORD lpcbBytesReturned,
58                               LPOVERLAPPED lpOverlapped);
59
60 static BOOL DeviceIo_VCD(DWORD dwIoControlCode, 
61                               LPVOID lpvInBuffer, DWORD cbInBuffer,
62                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
63                               LPDWORD lpcbBytesReturned,
64                               LPOVERLAPPED lpOverlapped);
65
66 static DWORD VxDCall_VWin32( DWORD service, CONTEXT86 *context );
67
68 static BOOL DeviceIo_VWin32(DWORD dwIoControlCode, 
69                               LPVOID lpvInBuffer, DWORD cbInBuffer,
70                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
71                               LPDWORD lpcbBytesReturned,
72                               LPOVERLAPPED lpOverlapped);
73
74 static BOOL DeviceIo_PCCARD (DWORD dwIoControlCode, 
75                               LPVOID lpvInBuffer, DWORD cbInBuffer,
76                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
77                               LPDWORD lpcbBytesReturned,
78                               LPOVERLAPPED lpOverlapped);
79
80 static BOOL DeviceIo_HASP (DWORD dwIoControlCode, 
81                               LPVOID lpvInBuffer, DWORD cbInBuffer,
82                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
83                               LPDWORD lpcbBytesReturned,
84                               LPOVERLAPPED lpOverlapped);
85 /*
86  * VxD names are taken from the Win95 DDK
87  */
88
89 struct VxDInfo
90 {
91     LPCSTR  name;
92     WORD    id;
93     DWORD (*vxdcall)(DWORD, CONTEXT86 *);
94     BOOL  (*deviceio)(DWORD, LPVOID, DWORD, 
95                         LPVOID, DWORD, LPDWORD, LPOVERLAPPED);
96 };
97
98 static const struct VxDInfo VxDList[] = 
99 {
100     /* Standard VxD IDs */
101     { "VMM",      0x0001, VxDCall_VMM, NULL },
102     { "DEBUG",    0x0002, NULL, NULL },
103     { "VPICD",    0x0003, NULL, NULL },
104     { "VDMAD",    0x0004, NULL, NULL },
105     { "VTD",      0x0005, NULL, NULL },
106     { "V86MMGR",  0x0006, NULL, NULL },
107     { "PAGESWAP", 0x0007, NULL, NULL },
108     { "PARITY",   0x0008, NULL, NULL },
109     { "REBOOT",   0x0009, NULL, NULL },
110     { "VDD",      0x000A, NULL, NULL },
111     { "VSD",      0x000B, NULL, NULL },
112     { "VMD",      0x000C, NULL, NULL },
113     { "VKD",      0x000D, NULL, NULL },
114     { "VCD",      0x000E, NULL, DeviceIo_VCD },
115     { "VPD",      0x000F, NULL, NULL },
116     { "BLOCKDEV", 0x0010, NULL, NULL },
117     { "VMCPD",    0x0011, NULL, NULL },
118     { "EBIOS",    0x0012, NULL, NULL },
119     { "BIOSXLAT", 0x0013, NULL, NULL },
120     { "VNETBIOS", 0x0014, NULL, NULL },
121     { "DOSMGR",   0x0015, NULL, NULL },
122     { "WINLOAD",  0x0016, NULL, NULL },
123     { "SHELL",    0x0017, NULL, NULL },
124     { "VMPOLL",   0x0018, NULL, NULL },
125     { "VPROD",    0x0019, NULL, NULL },
126     { "DOSNET",   0x001A, NULL, NULL },
127     { "VFD",      0x001B, NULL, NULL },
128     { "VDD2",     0x001C, NULL, NULL },
129     { "WINDEBUG", 0x001D, NULL, NULL },
130     { "TSRLOAD",  0x001E, NULL, NULL },
131     { "BIOSHOOK", 0x001F, NULL, NULL },
132     { "INT13",    0x0020, NULL, NULL },
133     { "PAGEFILE", 0x0021, NULL, NULL },
134     { "SCSI",     0x0022, NULL, NULL },
135     { "MCA_POS",  0x0023, NULL, NULL },
136     { "SCSIFD",   0x0024, NULL, NULL },
137     { "VPEND",    0x0025, NULL, NULL },
138     { "VPOWERD",  0x0026, NULL, NULL },
139     { "VXDLDR",   0x0027, NULL, NULL },
140     { "NDIS",     0x0028, NULL, NULL },
141     { "BIOS_EXT", 0x0029, NULL, NULL },
142     { "VWIN32",   0x002A, VxDCall_VWin32, DeviceIo_VWin32 },
143     { "VCOMM",    0x002B, NULL, NULL },
144     { "SPOOLER",  0x002C, NULL, NULL },
145     { "WIN32S",   0x002D, NULL, NULL },
146     { "DEBUGCMD", 0x002E, NULL, NULL },
147
148     { "VNB",      0x0031, NULL, NULL },
149     { "SERVER",   0x0032, NULL, NULL },
150     { "CONFIGMG", 0x0033, NULL, NULL },
151     { "DWCFGMG",  0x0034, NULL, NULL },
152     { "SCSIPORT", 0x0035, NULL, NULL },
153     { "VFBACKUP", 0x0036, NULL, NULL },
154     { "ENABLE",   0x0037, NULL, NULL },
155     { "VCOND",    0x0038, NULL, NULL },
156
157     { "EFAX",     0x003A, NULL, NULL },
158     { "DSVXD",    0x003B, NULL, NULL },
159     { "ISAPNP",   0x003C, NULL, NULL },
160     { "BIOS",     0x003D, NULL, NULL },
161     { "WINSOCK",  0x003E, NULL, NULL },
162     { "WSOCK",    0x003E, NULL, NULL },
163     { "WSIPX",    0x003F, NULL, NULL },
164     { "IFSMgr",   0x0040, NULL, DeviceIo_IFSMgr },
165     { "VCDFSD",   0x0041, NULL, NULL },
166     { "MRCI2",    0x0042, NULL, NULL },
167     { "PCI",      0x0043, NULL, NULL },
168     { "PELOADER", 0x0044, NULL, NULL },
169     { "EISA",     0x0045, NULL, NULL },
170     { "DRAGCLI",  0x0046, NULL, NULL },
171     { "DRAGSRV",  0x0047, NULL, NULL },
172     { "PERF",     0x0048, NULL, NULL },
173     { "AWREDIR",  0x0049, NULL, NULL },
174
175     /* Far East support */
176     { "ETEN",     0x0060, NULL, NULL },
177     { "CHBIOS",   0x0061, NULL, NULL },
178     { "VMSGD",    0x0062, NULL, NULL },
179     { "VPPID",    0x0063, NULL, NULL },
180     { "VIME",     0x0064, NULL, NULL },
181     { "VHBIOSD",  0x0065, NULL, NULL },
182
183     /* Multimedia OEM IDs */
184     { "VTDAPI",   0x0442, NULL, DeviceIo_VTDAPI },
185     { "MMDEVLDR", 0x044A, NULL, DeviceIo_MMDEVLDR },
186
187     /* Network Device IDs */
188     { "VNetSup",  0x0480, NULL, NULL },
189     { "VRedir",   0x0481, NULL, NULL },
190     { "VBrowse",  0x0482, NULL, NULL },
191     { "VSHARE",   0x0483, NULL, NULL },
192     { "IFSMgr",   0x0484, NULL, NULL },
193     { "MEMPROBE", 0x0485, NULL, NULL },
194     { "VFAT",     0x0486, NULL, NULL },
195     { "NWLINK",   0x0487, NULL, NULL },
196     { "VNWLINK",  0x0487, NULL, NULL },
197     { "NWSUP",    0x0487, NULL, NULL },
198     { "VTDI",     0x0488, NULL, NULL },
199     { "VIP",      0x0489, NULL, NULL },
200     { "VTCP",     0x048A, NULL, NULL },
201     { "VCache",   0x048B, NULL, NULL },
202     { "VUDP",     0x048C, NULL, NULL },
203     { "VAsync",   0x048D, NULL, NULL },
204     { "NWREDIR",  0x048E, NULL, NULL },
205     { "STAT80",   0x048F, NULL, NULL },
206     { "SCSIPORT", 0x0490, NULL, NULL },
207     { "FILESEC",  0x0491, NULL, NULL },
208     { "NWSERVER", 0x0492, NULL, NULL },
209     { "SECPROV",  0x0493, NULL, NULL },
210     { "NSCL",     0x0494, NULL, NULL },
211     { "WSTCP",    0x0495, NULL, NULL },
212     { "NDIS2SUP", 0x0496, NULL, NULL },
213     { "MSODISUP", 0x0497, NULL, NULL },
214     { "Splitter", 0x0498, NULL, NULL },
215     { "PPP",      0x0499, NULL, NULL },
216     { "VDHCP",    0x049A, NULL, NULL },
217     { "VNBT",     0x049B, NULL, NULL },
218     { "LOGGER",   0x049D, NULL, NULL },
219     { "EFILTER",  0x049E, NULL, NULL },
220     { "FFILTER",  0x049F, NULL, NULL },
221     { "TFILTER",  0x04A0, NULL, NULL },
222     { "AFILTER",  0x04A1, NULL, NULL },
223     { "IRLAMP",   0x04A2, NULL, NULL },
224
225     { "PCCARD",   0x097C, NULL, DeviceIo_PCCARD },
226     { "HASP95",   0x3721, NULL, DeviceIo_HASP },
227
228     /* WINE additions, ids unknown */
229     { "MONODEBG.VXD", 0x4242, NULL, DeviceIo_MONODEBG },
230
231     { NULL,       0,      NULL, NULL }
232 };
233
234 /*
235  * VMM VxDCall service names are (mostly) taken from Stan Mitchell's
236  * "Inside the Windows 95 File System"
237  */
238
239 #define N_VMM_SERVICE 41
240
241 LPCSTR VMM_Service_Name[N_VMM_SERVICE] =
242
243     "PageReserve",            /* 0x0000 */
244     "PageCommit",             /* 0x0001 */
245     "PageDecommit",           /* 0x0002 */
246     "PagerRegister",          /* 0x0003 */
247     "PagerQuery",             /* 0x0004 */
248     "HeapAllocate",           /* 0x0005 */
249     "ContextCreate",          /* 0x0006 */
250     "ContextDestroy",         /* 0x0007 */
251     "PageAttach",             /* 0x0008 */
252     "PageFlush",              /* 0x0009 */
253     "PageFree",               /* 0x000A */
254     "ContextSwitch",          /* 0x000B */
255     "HeapReAllocate",         /* 0x000C */
256     "PageModifyPermissions",  /* 0x000D */
257     "PageQuery",              /* 0x000E */
258     "GetCurrentContext",      /* 0x000F */
259     "HeapFree",               /* 0x0010 */
260     "RegOpenKey",             /* 0x0011 */
261     "RegCreateKey",           /* 0x0012 */
262     "RegCloseKey",            /* 0x0013 */
263     "RegDeleteKey",           /* 0x0014 */
264     "RegSetValue",            /* 0x0015 */
265     "RegDeleteValue",         /* 0x0016 */
266     "RegQueryValue",          /* 0x0017 */
267     "RegEnumKey",             /* 0x0018 */
268     "RegEnumValue",           /* 0x0019 */
269     "RegQueryValueEx",        /* 0x001A */
270     "RegSetValueEx",          /* 0x001B */
271     "RegFlushKey",            /* 0x001C */
272     "RegQueryInfoKey",        /* 0x001D */
273     "GetDemandPageInfo",      /* 0x001E */
274     "BlockOnID",              /* 0x001F */
275     "SignalID",               /* 0x0020 */
276     "RegLoadKey",             /* 0x0021 */
277     "RegUnLoadKey",           /* 0x0022 */
278     "RegSaveKey",             /* 0x0023 */
279     "RegRemapPreDefKey",      /* 0x0024 */
280     "PageChangePager",        /* 0x0025 */
281     "RegQueryMultipleValues", /* 0x0026 */
282     "RegReplaceKey",          /* 0x0027 */
283     "<KERNEL32.101>"          /* 0x0028 -- What does this do??? */
284 };
285
286 /* PageReserve arena values */
287 #define PR_PRIVATE  0x80000400  /* anywhere in private arena */
288 #define PR_SHARED   0x80060000  /* anywhere in shared arena */
289 #define PR_SYSTEM   0x80080000  /* anywhere in system arena */
290
291 /* PageReserve flags */
292 #define PR_FIXED    0x00000008  /* don't move during PageReAllocate */
293 #define PR_4MEG     0x00000001  /* allocate on 4mb boundary */
294 #define PR_STATIC   0x00000010  /* see PageReserve documentation */
295
296 /* PageCommit default pager handle values */
297 #define PD_ZEROINIT 0x00000001  /* swappable zero-initialized pages */
298 #define PD_NOINIT   0x00000002  /* swappable uninitialized pages */
299 #define PD_FIXEDZERO    0x00000003  /* fixed zero-initialized pages */
300 #define PD_FIXED    0x00000004  /* fixed uninitialized pages */
301
302 /* PageCommit flags */
303 #define PC_FIXED    0x00000008  /* pages are permanently locked */
304 #define PC_LOCKED   0x00000080  /* pages are made present and locked */
305 #define PC_LOCKEDIFDP   0x00000100  /* pages are locked if swap via DOS */
306 #define PC_WRITEABLE    0x00020000  /* make the pages writeable */
307 #define PC_USER     0x00040000  /* make the pages ring 3 accessible */
308 #define PC_INCR     0x40000000  /* increment "pagerdata" each page */
309 #define PC_PRESENT  0x80000000  /* make pages initially present */
310 #define PC_STATIC   0x20000000  /* allow commit in PR_STATIC object */
311 #define PC_DIRTY    0x08000000  /* make pages initially dirty */
312 #define PC_CACHEDIS 0x00100000  /* Allocate uncached pages - new for WDM */
313 #define PC_CACHEWT  0x00080000  /* Allocate write through cache pages - new for WDM */
314 #define PC_PAGEFLUSH 0x00008000 /* Touch device mapped pages on alloc - new for WDM */
315
316 /* PageCommitContig additional flags */
317 #define PCC_ZEROINIT    0x00000001  /* zero-initialize new pages */
318 #define PCC_NOLIN   0x10000000  /* don't map to any linear address */
319
320
321
322 HANDLE DEVICE_Open( LPCSTR filename, DWORD access,
323                       LPSECURITY_ATTRIBUTES sa )
324 {
325     const struct VxDInfo *info;
326
327     for (info = VxDList; info->name; info++)
328         if (!strncasecmp( info->name, filename, strlen(info->name) ))
329             return FILE_CreateDevice( info->id | 0x10000, access, sa );
330
331     FIXME( "Unknown VxD %s. Try --winver nt40 or win31 !\n", filename);
332     SetLastError( ERROR_FILE_NOT_FOUND );
333     return 0;
334 }
335
336 static const struct VxDInfo *DEVICE_GetInfo( HANDLE handle )
337 {
338     const struct VxDInfo *info = NULL;
339     SERVER_START_REQ( get_file_info )
340     {
341         req->handle = handle;
342         if (!SERVER_CALL() &&
343             (req->type == FILE_TYPE_UNKNOWN) &&
344             (req->attr & 0x10000))
345         {
346             for (info = VxDList; info->name; info++)
347                 if (info->id == LOWORD(req->attr)) break;
348         }
349     }
350     SERVER_END_REQ;
351     return info;
352 }
353
354 /****************************************************************************
355  *              DeviceIoControl (KERNEL32.188)
356  * This is one of those big ugly nasty procedure which can do
357  * a million and one things when it comes to devices. It can also be
358  * used for VxD communication.
359  *
360  * A return value of FALSE indicates that something has gone wrong which
361  * GetLastError can decipher.
362  */
363 BOOL WINAPI DeviceIoControl(HANDLE hDevice, DWORD dwIoControlCode, 
364                               LPVOID lpvInBuffer, DWORD cbInBuffer,
365                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
366                               LPDWORD lpcbBytesReturned,
367                               LPOVERLAPPED lpOverlapped)
368 {
369         const struct VxDInfo *info;
370
371         TRACE( "(%d,%ld,%p,%ld,%p,%ld,%p,%p)\n",
372                hDevice,dwIoControlCode,lpvInBuffer,cbInBuffer,
373                lpvOutBuffer,cbOutBuffer,lpcbBytesReturned,lpOverlapped  );
374
375         if (!(info = DEVICE_GetInfo( hDevice )))
376         {
377                 SetLastError( ERROR_INVALID_PARAMETER );
378                 return FALSE;
379         }
380
381         /* Check if this is a user defined control code for a VxD */
382         if( HIWORD( dwIoControlCode ) == 0 )
383         {
384                 if ( info->deviceio )
385                 {
386                         return info->deviceio( dwIoControlCode, 
387                                         lpvInBuffer, cbInBuffer, 
388                                         lpvOutBuffer, cbOutBuffer, 
389                                         lpcbBytesReturned, lpOverlapped );
390                 }
391                 else
392                 {
393                         FIXME( "Unimplemented control %ld for VxD device %s\n", 
394                                dwIoControlCode, info->name ? info->name : "???" );
395                         /* FIXME: this is for invalid calls on W98SE,
396                          * but maybe we should use ERROR_CALL_NOT_IMPLEMENTED
397                          * instead ? */
398                         SetLastError( ERROR_INVALID_FUNCTION );
399                 }
400         }
401         else
402         {
403                 switch( dwIoControlCode )
404                 {
405                 case FSCTL_DELETE_REPARSE_POINT:
406                 case FSCTL_DISMOUNT_VOLUME:
407                 case FSCTL_GET_COMPRESSION:
408                 case FSCTL_GET_REPARSE_POINT:
409                 case FSCTL_LOCK_VOLUME:
410                 case FSCTL_QUERY_ALLOCATED_RANGES:
411                 case FSCTL_SET_COMPRESSION:
412                 case FSCTL_SET_REPARSE_POINT:
413                 case FSCTL_SET_SPARSE:
414                 case FSCTL_SET_ZERO_DATA:
415                 case FSCTL_UNLOCK_VOLUME:
416                 case IOCTL_DISK_CHECK_VERIFY:
417                 case IOCTL_DISK_EJECT_MEDIA:
418                 case IOCTL_DISK_FORMAT_TRACKS:
419                 case IOCTL_DISK_GET_DRIVE_GEOMETRY:
420                 case IOCTL_DISK_GET_DRIVE_LAYOUT:
421                 case IOCTL_DISK_GET_MEDIA_TYPES:
422                 case IOCTL_DISK_GET_PARTITION_INFO:
423                 case IOCTL_DISK_LOAD_MEDIA:
424                 case IOCTL_DISK_MEDIA_REMOVAL:
425                 case IOCTL_DISK_PERFORMANCE:
426                 case IOCTL_DISK_REASSIGN_BLOCKS:
427                 case IOCTL_DISK_SET_DRIVE_LAYOUT:
428                 case IOCTL_DISK_SET_PARTITION_INFO:
429                 case IOCTL_DISK_VERIFY:
430                 case IOCTL_SERIAL_LSRMST_INSERT:
431                 case IOCTL_STORAGE_CHECK_VERIFY:
432                 case IOCTL_STORAGE_EJECT_MEDIA:
433                 case IOCTL_STORAGE_GET_MEDIA_TYPES:
434                 case IOCTL_STORAGE_LOAD_MEDIA:
435                 case IOCTL_STORAGE_MEDIA_REMOVAL:
436                         FIXME( "unimplemented dwIoControlCode=%08lx\n", dwIoControlCode);
437                         SetLastError( ERROR_CALL_NOT_IMPLEMENTED );
438                         return FALSE;
439                         break;
440                 default:
441                         FIXME( "ignored dwIoControlCode=%08lx\n",dwIoControlCode);
442                         SetLastError( ERROR_CALL_NOT_IMPLEMENTED );
443                         return FALSE;
444                         break;
445                 }
446         }
447         return FALSE;
448 }
449  
450 /***********************************************************************
451  *           DeviceIo_VTDAPI
452  */
453 static BOOL DeviceIo_VTDAPI(DWORD dwIoControlCode, LPVOID lpvInBuffer, DWORD cbInBuffer,
454                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
455                               LPDWORD lpcbBytesReturned,
456                               LPOVERLAPPED lpOverlapped)
457 {
458     BOOL retv = TRUE;
459
460     switch (dwIoControlCode)
461     {
462     case 5:
463         if (lpvOutBuffer && (cbOutBuffer>=4))
464             *(DWORD*)lpvOutBuffer = GetTickCount();
465
466         if (lpcbBytesReturned)
467             *lpcbBytesReturned = 4;
468
469         break;
470
471     default:
472         FIXME( "Control %ld not implemented\n", dwIoControlCode);
473         retv = FALSE;
474         break;
475     }
476
477     return retv;
478 }
479
480 /***********************************************************************
481  *              VxDCall0 (KERNEL32.1)
482  *              VxDCall1 (KERNEL32.2)
483  *              VxDCall2 (KERNEL32.3)
484  *              VxDCall3 (KERNEL32.4)
485  *              VxDCall4 (KERNEL32.5)
486  *              VxDCall5 (KERNEL32.6)
487  *              VxDCall6 (KERNEL32.7)
488  *              VxDCall7 (KERNEL32.8)
489  *              VxDCall8 (KERNEL32.9)
490  */
491 void VxDCall( DWORD service, CONTEXT86 *context )
492 {
493     DWORD ret = 0xffffffff; /* FIXME */
494     int i;
495
496     TRACE( "(%08lx, ...)\n", service);
497
498     for (i = 0; VxDList[i].name; i++)
499         if (VxDList[i].id == HIWORD(service))
500             break;
501
502     if (!VxDList[i].name)
503         FIXME( "Unknown VxD (%08lx)\n", service);
504     else if (!VxDList[i].vxdcall)
505         FIXME( "Unimplemented VxD (%08lx)\n", service);
506     else
507         ret = VxDList[i].vxdcall( service, context );
508
509     context->Eax = ret;
510 }
511
512
513 /***********************************************************************
514  *           VxDCall_VMM
515  */
516 static DWORD VxDCall_VMM( DWORD service, CONTEXT86 *context )
517 {
518     switch ( LOWORD(service) )
519     {
520     case 0x0011:  /* RegOpenKey */
521     {
522         HKEY    hkey       = (HKEY)  stack32_pop( context );
523         LPCSTR  lpszSubKey = (LPCSTR)stack32_pop( context );
524         LPHKEY  retkey     = (LPHKEY)stack32_pop( context );
525         return RegOpenKeyA( hkey, lpszSubKey, retkey );
526     }
527
528     case 0x0012:  /* RegCreateKey */
529     {
530         HKEY    hkey       = (HKEY)  stack32_pop( context );
531         LPCSTR  lpszSubKey = (LPCSTR)stack32_pop( context );
532         LPHKEY  retkey     = (LPHKEY)stack32_pop( context );
533         return RegCreateKeyA( hkey, lpszSubKey, retkey );
534     }
535
536     case 0x0013:  /* RegCloseKey */
537     {
538         HKEY    hkey       = (HKEY)stack32_pop( context );
539         return RegCloseKey( hkey );
540     }
541
542     case 0x0014:  /* RegDeleteKey */
543     {
544         HKEY    hkey       = (HKEY)  stack32_pop( context );
545         LPCSTR  lpszSubKey = (LPCSTR)stack32_pop( context );
546         return RegDeleteKeyA( hkey, lpszSubKey );
547     }
548
549     case 0x0015:  /* RegSetValue */
550     {
551         HKEY    hkey       = (HKEY)  stack32_pop( context );
552         LPCSTR  lpszSubKey = (LPCSTR)stack32_pop( context );
553         DWORD   dwType     = (DWORD) stack32_pop( context );
554         LPCSTR  lpszData   = (LPCSTR)stack32_pop( context );
555         DWORD   cbData     = (DWORD) stack32_pop( context );
556         return RegSetValueA( hkey, lpszSubKey, dwType, lpszData, cbData );
557     }
558
559     case 0x0016:  /* RegDeleteValue */
560     {
561         HKEY    hkey       = (HKEY) stack32_pop( context );
562         LPSTR   lpszValue  = (LPSTR)stack32_pop( context );
563         return RegDeleteValueA( hkey, lpszValue );
564     }
565
566     case 0x0017:  /* RegQueryValue */
567     {
568         HKEY    hkey       = (HKEY)   stack32_pop( context );
569         LPSTR   lpszSubKey = (LPSTR)  stack32_pop( context );
570         LPSTR   lpszData   = (LPSTR)  stack32_pop( context );
571         LPDWORD lpcbData   = (LPDWORD)stack32_pop( context );
572         return RegQueryValueA( hkey, lpszSubKey, lpszData, lpcbData );
573     }
574
575     case 0x0018:  /* RegEnumKey */
576     {
577         HKEY    hkey       = (HKEY) stack32_pop( context );
578         DWORD   iSubkey    = (DWORD)stack32_pop( context );
579         LPSTR   lpszName   = (LPSTR)stack32_pop( context );
580         DWORD   lpcchName  = (DWORD)stack32_pop( context );
581         return RegEnumKeyA( hkey, iSubkey, lpszName, lpcchName );
582     }
583
584     case 0x0019:  /* RegEnumValue */
585     {
586         HKEY    hkey       = (HKEY)   stack32_pop( context );
587         DWORD   iValue     = (DWORD)  stack32_pop( context );
588         LPSTR   lpszValue  = (LPSTR)  stack32_pop( context );
589         LPDWORD lpcchValue = (LPDWORD)stack32_pop( context );
590         LPDWORD lpReserved = (LPDWORD)stack32_pop( context );
591         LPDWORD lpdwType   = (LPDWORD)stack32_pop( context );
592         LPBYTE  lpbData    = (LPBYTE) stack32_pop( context );
593         LPDWORD lpcbData   = (LPDWORD)stack32_pop( context );
594         return RegEnumValueA( hkey, iValue, lpszValue, lpcchValue, 
595                               lpReserved, lpdwType, lpbData, lpcbData );
596     }
597
598     case 0x001A:  /* RegQueryValueEx */
599     {
600         HKEY    hkey       = (HKEY)   stack32_pop( context );
601         LPSTR   lpszValue  = (LPSTR)  stack32_pop( context );
602         LPDWORD lpReserved = (LPDWORD)stack32_pop( context );
603         LPDWORD lpdwType   = (LPDWORD)stack32_pop( context );
604         LPBYTE  lpbData    = (LPBYTE) stack32_pop( context );
605         LPDWORD lpcbData   = (LPDWORD)stack32_pop( context );
606         return RegQueryValueExA( hkey, lpszValue, lpReserved, 
607                                  lpdwType, lpbData, lpcbData );
608     }
609
610     case 0x001B:  /* RegSetValueEx */
611     {
612         HKEY    hkey       = (HKEY)  stack32_pop( context );
613         LPSTR   lpszValue  = (LPSTR) stack32_pop( context );
614         DWORD   dwReserved = (DWORD) stack32_pop( context );
615         DWORD   dwType     = (DWORD) stack32_pop( context );
616         LPBYTE  lpbData    = (LPBYTE)stack32_pop( context );
617         DWORD   cbData     = (DWORD) stack32_pop( context );
618         return RegSetValueExA( hkey, lpszValue, dwReserved, 
619                                dwType, lpbData, cbData );
620     }
621
622     case 0x001C:  /* RegFlushKey */
623     {
624         HKEY    hkey       = (HKEY)stack32_pop( context );
625         return RegFlushKey( hkey );
626     }
627
628     case 0x001D:  /* RegQueryInfoKey */
629     {
630         /* NOTE: This VxDCall takes only a subset of the parameters that the
631                  corresponding Win32 API call does. The implementation in Win95
632                  ADVAPI32 sets all output parameters not mentioned here to zero. */
633
634         HKEY    hkey              = (HKEY)   stack32_pop( context );
635         LPDWORD lpcSubKeys        = (LPDWORD)stack32_pop( context );
636         LPDWORD lpcchMaxSubKey    = (LPDWORD)stack32_pop( context );
637         LPDWORD lpcValues         = (LPDWORD)stack32_pop( context );
638         LPDWORD lpcchMaxValueName = (LPDWORD)stack32_pop( context );
639         LPDWORD lpcchMaxValueData = (LPDWORD)stack32_pop( context );
640         return RegQueryInfoKeyA( hkey, NULL, NULL, NULL, lpcSubKeys, lpcchMaxSubKey,
641                                  NULL, lpcValues, lpcchMaxValueName, lpcchMaxValueData,
642                                  NULL, NULL );
643     }
644
645     case 0x0021:  /* RegLoadKey */
646     {
647         HKEY    hkey       = (HKEY)  stack32_pop( context );
648         LPCSTR  lpszSubKey = (LPCSTR)stack32_pop( context );
649         LPCSTR  lpszFile   = (LPCSTR)stack32_pop( context );
650         return RegLoadKeyA( hkey, lpszSubKey, lpszFile );
651     }
652
653     case 0x0022:  /* RegUnLoadKey */
654     {
655         HKEY    hkey       = (HKEY)  stack32_pop( context );
656         LPCSTR  lpszSubKey = (LPCSTR)stack32_pop( context );
657         return RegUnLoadKeyA( hkey, lpszSubKey );
658     }
659
660     case 0x0023:  /* RegSaveKey */
661     {
662         HKEY    hkey       = (HKEY)  stack32_pop( context );
663         LPCSTR  lpszFile   = (LPCSTR)stack32_pop( context );
664         LPSECURITY_ATTRIBUTES sa = (LPSECURITY_ATTRIBUTES)stack32_pop( context );
665         return RegSaveKeyA( hkey, lpszFile, sa );
666     }
667
668 #if 0 /* Functions are not yet implemented in misc/registry.c */
669     case 0x0024:  /* RegRemapPreDefKey */
670     case 0x0026:  /* RegQueryMultipleValues */
671 #endif
672
673     case 0x0027:  /* RegReplaceKey */
674     {
675         HKEY    hkey       = (HKEY)  stack32_pop( context );
676         LPCSTR  lpszSubKey = (LPCSTR)stack32_pop( context );
677         LPCSTR  lpszNewFile= (LPCSTR)stack32_pop( context );
678         LPCSTR  lpszOldFile= (LPCSTR)stack32_pop( context );
679         return RegReplaceKeyA( hkey, lpszSubKey, lpszNewFile, lpszOldFile );
680     }
681     case 0x0000: /* PageReserve */
682       {
683         LPVOID address;
684         LPVOID ret;
685         DWORD psize = getpagesize();
686         ULONG page   = (ULONG) stack32_pop( context );
687         ULONG npages = (ULONG) stack32_pop( context );
688         ULONG flags  = (ULONG) stack32_pop( context );
689
690         TRACE("PageReserve: page: %08lx, npages: %08lx, flags: %08lx partial stub!\n",
691               page, npages, flags );
692
693         if ( page == PR_SYSTEM ) {
694           ERR("Can't reserve ring 1 memory\n");
695           return -1;
696         }
697         /* FIXME: This has to be handled separately for the separate
698            address-spaces we now have */
699         if ( page == PR_PRIVATE || page == PR_SHARED ) page = 0;
700         /* FIXME: Handle flags in some way */
701         address = (LPVOID )(page * psize); 
702         ret = VirtualAlloc ( address, ( npages * psize ), MEM_RESERVE, 0 );
703         TRACE("PageReserve: returning: %08lx\n", (DWORD )ret );
704         if ( ret == NULL )
705           return -1;
706         else
707           return (DWORD )ret;
708       }
709
710     case 0x0001: /* PageCommit */
711       {
712         LPVOID address;
713         LPVOID ret;
714         DWORD virt_perm;
715         DWORD psize = getpagesize();
716         ULONG page   = (ULONG) stack32_pop( context );
717         ULONG npages = (ULONG) stack32_pop( context );
718         ULONG hpd  = (ULONG) stack32_pop( context );
719         ULONG pagerdata   = (ULONG) stack32_pop( context );
720         ULONG flags  = (ULONG) stack32_pop( context );
721
722         TRACE("PageCommit: page: %08lx, npages: %08lx, hpd: %08lx pagerdata: "
723               "%08lx, flags: %08lx partial stub\n",
724               page, npages, hpd, pagerdata, flags );
725         
726         if ( flags & PC_USER )
727           if ( flags & PC_WRITEABLE )
728             virt_perm = PAGE_EXECUTE_READWRITE;
729           else
730             virt_perm = PAGE_EXECUTE_READ;
731         else
732           virt_perm = PAGE_NOACCESS;
733
734         address = (LPVOID )(page * psize); 
735         ret = VirtualAlloc ( address, ( npages * psize ), MEM_COMMIT, virt_perm );
736         TRACE("PageCommit: Returning: %08lx\n", (DWORD )ret );
737         return (DWORD )ret;
738
739       }
740     case 0x0002: /* PageDecommit */
741       {
742         LPVOID address;
743         BOOL ret;
744         DWORD psize = getpagesize();
745         ULONG page = (ULONG) stack32_pop( context );
746         ULONG npages = (ULONG) stack32_pop( context );
747         ULONG flags = (ULONG) stack32_pop( context );
748
749         TRACE("PageDecommit: page: %08lx, npages: %08lx, flags: %08lx partial stub\n",
750               page, npages, flags );
751         address = (LPVOID )( page * psize );
752         ret = VirtualFree ( address, ( npages * psize ), MEM_DECOMMIT ); 
753         TRACE("PageDecommit: Returning: %s\n", ret ? "TRUE" : "FALSE" );
754         return ret;
755       }
756     case 0x000d: /* PageModifyPermissions */
757       { 
758         DWORD pg_old_perm;
759         DWORD pg_new_perm;
760         DWORD virt_old_perm;
761         DWORD virt_new_perm;
762         MEMORY_BASIC_INFORMATION mbi;
763         LPVOID address;
764         DWORD psize = getpagesize();
765         ULONG page = stack32_pop ( context );
766         ULONG npages = stack32_pop ( context );
767         ULONG permand = stack32_pop ( context );
768         ULONG permor = stack32_pop ( context );
769
770         TRACE("PageModifyPermissions %08lx %08lx %08lx %08lx partial stub\n",
771               page, npages, permand, permor );
772         address = (LPVOID )( page * psize );
773
774         VirtualQuery ( address, &mbi, sizeof ( MEMORY_BASIC_INFORMATION ));
775         virt_old_perm = mbi.Protect;
776
777         switch ( virt_old_perm & mbi.Protect ) {
778         case PAGE_READONLY:
779         case PAGE_EXECUTE:
780         case PAGE_EXECUTE_READ:
781           pg_old_perm = PC_USER;
782           break;
783         case PAGE_READWRITE:
784         case PAGE_WRITECOPY:
785         case PAGE_EXECUTE_READWRITE:
786         case PAGE_EXECUTE_WRITECOPY:
787           pg_old_perm = PC_USER | PC_WRITEABLE;
788           break; 
789         case PAGE_NOACCESS:
790         default:
791           pg_old_perm = 0;
792           break;
793         }       
794         pg_new_perm = pg_old_perm;
795         pg_new_perm &= permand & ~PC_STATIC;
796         pg_new_perm |= permor  & ~PC_STATIC;
797
798         virt_new_perm = ( virt_old_perm )  & ~0xff;
799         if ( pg_new_perm & PC_USER )
800         {
801           if ( pg_new_perm & PC_WRITEABLE )
802             virt_new_perm |= PAGE_EXECUTE_READWRITE;
803           else
804             virt_new_perm |= PAGE_EXECUTE_READ;
805         }
806   
807         if ( ! VirtualProtect ( address, ( npages * psize ), virt_new_perm, &virt_old_perm ) ) {
808           ERR("Can't change page permissions for %08lx\n", (DWORD )address );
809           return 0xffffffff;
810         }
811         TRACE("Returning: %08lx\n", pg_old_perm );
812         return pg_old_perm;
813       }
814     case 0x000a: /* PageFree */
815       {
816         BOOL ret;
817         LPVOID hmem = (LPVOID) stack32_pop( context );
818         DWORD flags = (DWORD ) stack32_pop( context );
819         
820         TRACE("PageFree: hmem: %08lx, flags: %08lx partial stub\n",
821               (DWORD )hmem, flags );
822
823         ret = VirtualFree ( hmem, 0, MEM_RELEASE );
824         context->Eax = ret;
825         TRACE("Returning: %d\n", ret );
826
827         return 0;
828       }
829     case 0x001e: /* GetDemandPageInfo */
830       {
831          DWORD dinfo = (DWORD)stack32_pop( context );
832          DWORD flags = (DWORD)stack32_pop( context );   
833
834          /* GetDemandPageInfo is supposed to fill out the struct at
835           * "dinfo" with various low-level memory management information.
836           * Apps are certainly not supposed to call this, although it's
837           * demoed and documented by Pietrek on pages 441-443 of "Windows
838           * 95 System Programming Secrets" if any program needs a real
839           * implementation of this.
840           */
841
842          FIXME("GetDemandPageInfo(%08lx %08lx): stub!\n", dinfo, flags);
843
844          return 0;
845       }
846     default:
847         if (LOWORD(service) < N_VMM_SERVICE)
848             FIXME( "Unimplemented service %s (%08lx)\n",
849                           VMM_Service_Name[LOWORD(service)], service);
850         else
851             FIXME( "Unknown service %08lx\n", service);
852         break;
853     }
854
855     return 0xffffffff;  /* FIXME */
856 }
857
858 /***********************************************************************
859  *           DeviceIo_IFSMgr
860  * NOTES
861  *   These ioctls are used by 'MSNET32.DLL'.
862  *
863  *   I have been unable to uncover any documentation about the ioctls so 
864  *   the implementation of the cases IFS_IOCTL_21 and IFS_IOCTL_2F are
865  *   based on reasonable guesses on information found in the Windows 95 DDK.
866  *   
867  */
868
869 /*
870  * IFSMgr DeviceIO service
871  */
872
873 #define IFS_IOCTL_21                100
874 #define IFS_IOCTL_2F                101
875 #define IFS_IOCTL_GET_RES           102
876 #define IFS_IOCTL_GET_NETPRO_NAME_A 103
877
878 struct win32apireq {
879         unsigned long   ar_proid;
880         unsigned long   ar_eax;         
881         unsigned long   ar_ebx; 
882         unsigned long   ar_ecx; 
883         unsigned long   ar_edx; 
884         unsigned long   ar_esi; 
885         unsigned long   ar_edi;
886         unsigned long   ar_ebp;         
887         unsigned short  ar_error;
888         unsigned short  ar_pad;
889 };
890
891 static void win32apieq_2_CONTEXT(struct win32apireq *pIn,CONTEXT86 *pCxt)
892 {
893         memset(pCxt,0,sizeof(*pCxt));
894
895         pCxt->ContextFlags=CONTEXT86_INTEGER|CONTEXT86_CONTROL;
896         pCxt->Eax = pIn->ar_eax;
897         pCxt->Ebx = pIn->ar_ebx;
898         pCxt->Ecx = pIn->ar_ecx;
899         pCxt->Edx = pIn->ar_edx;
900         pCxt->Esi = pIn->ar_esi;
901         pCxt->Edi = pIn->ar_edi;
902
903         /* FIXME: Only partial CONTEXT86_CONTROL */
904         pCxt->Ebp = pIn->ar_ebp;
905
906         /* FIXME: pIn->ar_proid ignored */
907         /* FIXME: pIn->ar_error ignored */
908         /* FIXME: pIn->ar_pad ignored */
909 }
910
911 static void CONTEXT_2_win32apieq(CONTEXT86 *pCxt,struct win32apireq *pOut)
912 {
913         memset(pOut,0,sizeof(struct win32apireq));
914
915         pOut->ar_eax = pCxt->Eax;
916         pOut->ar_ebx = pCxt->Ebx;
917         pOut->ar_ecx = pCxt->Ecx;
918         pOut->ar_edx = pCxt->Edx;
919         pOut->ar_esi = pCxt->Esi;
920         pOut->ar_edi = pCxt->Edi;
921
922         /* FIXME: Only partial CONTEXT86_CONTROL */
923         pOut->ar_ebp = pCxt->Ebp;
924
925         /* FIXME: pOut->ar_proid ignored */
926         /* FIXME: pOut->ar_error ignored */
927         /* FIXME: pOut->ar_pad ignored */
928 }
929
930 static BOOL DeviceIo_IFSMgr(DWORD dwIoControlCode, LPVOID lpvInBuffer, DWORD cbInBuffer,
931                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
932                               LPDWORD lpcbBytesReturned,
933                               LPOVERLAPPED lpOverlapped)
934 {
935     BOOL retv = TRUE;
936         TRACE("(%ld,%p,%ld,%p,%ld,%p,%p): stub\n",
937                         dwIoControlCode,
938                         lpvInBuffer,cbInBuffer,
939                         lpvOutBuffer,cbOutBuffer,
940                         lpcbBytesReturned,
941                         lpOverlapped);
942
943     switch (dwIoControlCode)
944     {
945         case IFS_IOCTL_21:
946         case IFS_IOCTL_2F:{
947                 CONTEXT86 cxt;
948                 struct win32apireq *pIn=(struct win32apireq *) lpvInBuffer;
949                 struct win32apireq *pOut=(struct win32apireq *) lpvOutBuffer;
950
951                 TRACE(
952                         "Control '%s': "
953                         "proid=0x%08lx, eax=0x%08lx, ebx=0x%08lx, ecx=0x%08lx, "
954                         "edx=0x%08lx, esi=0x%08lx, edi=0x%08lx, ebp=0x%08lx, "
955                         "error=0x%04x, pad=0x%04x\n",
956                         (dwIoControlCode==IFS_IOCTL_21)?"IFS_IOCTL_21":"IFS_IOCTL_2F",
957                         pIn->ar_proid, pIn->ar_eax, pIn->ar_ebx, pIn->ar_ecx,
958                         pIn->ar_edx, pIn->ar_esi, pIn->ar_edi, pIn->ar_ebp,
959                         pIn->ar_error, pIn->ar_pad
960                 );                              
961                 
962                 win32apieq_2_CONTEXT(pIn,&cxt);
963
964                 if(dwIoControlCode==IFS_IOCTL_21)
965                 {
966                         DOS3Call(&cxt); /* Call int 21h */
967                 } else {
968                         INT_Int2fHandler(&cxt); /* Call int 2Fh */
969                 }
970                 
971                 CONTEXT_2_win32apieq(&cxt,pOut);
972                         
973         retv = TRUE;
974         } break;
975         case IFS_IOCTL_GET_RES:{
976         FIXME( "Control 'IFS_IOCTL_GET_RES' not implemented\n");
977         retv = FALSE;
978         } break;
979         case IFS_IOCTL_GET_NETPRO_NAME_A:{
980         FIXME( "Control 'IFS_IOCTL_GET_NETPRO_NAME_A' not implemented\n");
981         retv = FALSE;
982         } break;         
983     default:
984         FIXME( "Control %ld not implemented\n", dwIoControlCode);
985         retv = FALSE;
986     }
987
988     return retv;
989 }
990
991 /********************************************************************************
992  *      VxDCall_VWin32
993  *
994  *  Service numbers taken from page 448 of Pietrek's "Windows 95 System
995  *  Programming Secrets".  Parameters from experimentation on real Win98.
996  *
997  */
998
999 static DWORD VxDCall_VWin32( DWORD service, CONTEXT86 *context )
1000 {
1001   switch ( LOWORD(service) )
1002     {
1003     case 0x0000: /* GetVersion */
1004     {
1005         DWORD vers = GetVersion();
1006         return (LOBYTE(vers) << 8) | HIBYTE(vers);
1007     }
1008     break;
1009
1010     case 0x0020: /* Get VMCPD Version */
1011     {
1012         DWORD parm = (DWORD) stack32_pop(context);
1013
1014         FIXME("Get VMCPD Version(%08lx): partial stub!\n", parm);
1015
1016         /* FIXME: This is what Win98 returns, it may
1017          *        not be correct in all situations.
1018          *        It makes Bleem! happy though.
1019          */
1020
1021         return 0x0405;
1022     }
1023
1024     case 0x0029: /* Int31/DPMI dispatch */
1025     {
1026         DWORD callnum = (DWORD) stack32_pop(context);
1027         DWORD parm    = (DWORD) stack32_pop(context);
1028  
1029         TRACE("Int31/DPMI dispatch(%08lx)\n", callnum);
1030
1031         AX_reg(context) = callnum;
1032         CX_reg(context) = parm;  
1033         INT_Int31Handler(context);
1034
1035         return LOWORD(context->Eax);
1036     }
1037     break;
1038
1039     case 0x002a: /* Int41 dispatch - parm = int41 service number */
1040     {
1041         DWORD callnum = (DWORD) stack32_pop(context);
1042
1043         return callnum; /* FIXME: should really call INT_Int41Handler() */
1044     }
1045     break;
1046
1047     default:
1048       FIXME("Unknown VWin32 service %08lx\n", service);
1049       break;
1050     }
1051
1052   return 0xffffffff;
1053 }
1054                          
1055
1056 /***********************************************************************
1057  *           DeviceIo_VCD
1058  */
1059 static BOOL DeviceIo_VCD(DWORD dwIoControlCode, 
1060                               LPVOID lpvInBuffer, DWORD cbInBuffer,
1061                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
1062                               LPDWORD lpcbBytesReturned,
1063                               LPOVERLAPPED lpOverlapped)
1064 {
1065     BOOL retv = TRUE;
1066
1067     switch (dwIoControlCode)
1068     {
1069     case IOCTL_SERIAL_LSRMST_INSERT:
1070     {
1071         FIXME( "IOCTL_SERIAL_LSRMST_INSERT NIY !\n");
1072         retv = FALSE;
1073     }
1074     break;
1075
1076     default:
1077         FIXME( "Unknown Control %ld\n", dwIoControlCode);
1078         retv = FALSE;
1079         break;
1080     }
1081
1082     return retv;
1083 }
1084
1085  
1086 /***********************************************************************
1087  *           DeviceIo_VWin32
1088  */
1089
1090 static void DIOCRegs_2_CONTEXT( DIOC_REGISTERS *pIn, CONTEXT86 *pCxt )
1091 {
1092     memset( pCxt, 0, sizeof(*pCxt) );
1093     /* Note: segment registers == 0 means that CTX_SEG_OFF_TO_LIN
1094              will interpret 32-bit register contents as linear pointers */
1095
1096     pCxt->ContextFlags=CONTEXT86_INTEGER|CONTEXT86_CONTROL;
1097     pCxt->Eax = pIn->reg_EAX;
1098     pCxt->Ebx = pIn->reg_EBX;
1099     pCxt->Ecx = pIn->reg_ECX;
1100     pCxt->Edx = pIn->reg_EDX;
1101     pCxt->Esi = pIn->reg_ESI;
1102     pCxt->Edi = pIn->reg_EDI;
1103
1104     /* FIXME: Only partial CONTEXT86_CONTROL */
1105     pCxt->EFlags = pIn->reg_Flags;
1106 }
1107
1108 static void CONTEXT_2_DIOCRegs( CONTEXT86 *pCxt, DIOC_REGISTERS *pOut )
1109 {
1110     memset( pOut, 0, sizeof(DIOC_REGISTERS) );
1111
1112     pOut->reg_EAX = pCxt->Eax;
1113     pOut->reg_EBX = pCxt->Ebx;
1114     pOut->reg_ECX = pCxt->Ecx;
1115     pOut->reg_EDX = pCxt->Edx;
1116     pOut->reg_ESI = pCxt->Esi;
1117     pOut->reg_EDI = pCxt->Edi;
1118
1119     /* FIXME: Only partial CONTEXT86_CONTROL */
1120     pOut->reg_Flags = pCxt->EFlags;
1121 }
1122
1123
1124 static BOOL DeviceIo_VWin32(DWORD dwIoControlCode, 
1125                               LPVOID lpvInBuffer, DWORD cbInBuffer,
1126                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
1127                               LPDWORD lpcbBytesReturned,
1128                               LPOVERLAPPED lpOverlapped)
1129 {
1130     BOOL retv = TRUE;
1131
1132     switch (dwIoControlCode)
1133     {
1134     case VWIN32_DIOC_DOS_IOCTL:
1135     case VWIN32_DIOC_DOS_INT13:
1136     case VWIN32_DIOC_DOS_INT25:
1137     case VWIN32_DIOC_DOS_INT26:
1138         case VWIN32_DIOC_DOS_DRIVEINFO:
1139     {
1140         CONTEXT86 cxt;
1141         DIOC_REGISTERS *pIn  = (DIOC_REGISTERS *)lpvInBuffer;
1142         DIOC_REGISTERS *pOut = (DIOC_REGISTERS *)lpvOutBuffer;
1143
1144         TRACE( "Control '%s': "
1145                "eax=0x%08lx, ebx=0x%08lx, ecx=0x%08lx, "
1146                "edx=0x%08lx, esi=0x%08lx, edi=0x%08lx ",
1147                (dwIoControlCode == VWIN32_DIOC_DOS_IOCTL)? "VWIN32_DIOC_DOS_IOCTL" :
1148                (dwIoControlCode == VWIN32_DIOC_DOS_INT13)? "VWIN32_DIOC_DOS_INT13" :
1149                (dwIoControlCode == VWIN32_DIOC_DOS_INT25)? "VWIN32_DIOC_DOS_INT25" :
1150                (dwIoControlCode == VWIN32_DIOC_DOS_INT26)? "VWIN32_DIOC_DOS_INT26" : 
1151                (dwIoControlCode == VWIN32_DIOC_DOS_DRIVEINFO)? "VWIN32_DIOC_DOS_DRIVEINFO" :  "???",
1152                pIn->reg_EAX, pIn->reg_EBX, pIn->reg_ECX,
1153                pIn->reg_EDX, pIn->reg_ESI, pIn->reg_EDI );
1154
1155         DIOCRegs_2_CONTEXT( pIn, &cxt );
1156
1157         switch (dwIoControlCode)
1158         {
1159         case VWIN32_DIOC_DOS_IOCTL: DOS3Call( &cxt ); break; /* Call int 21h */
1160         case VWIN32_DIOC_DOS_INT13: INT_Int13Handler( &cxt ); break;
1161         case VWIN32_DIOC_DOS_INT25: INT_Int25Handler( &cxt ); break;
1162         case VWIN32_DIOC_DOS_INT26: INT_Int26Handler( &cxt ); break;
1163                 case VWIN32_DIOC_DOS_DRIVEINFO: DOS3Call( &cxt ); break; /* Call int 21h 730x */
1164         }
1165
1166         CONTEXT_2_DIOCRegs( &cxt, pOut );
1167     }
1168     break;
1169
1170     case VWIN32_DIOC_SIMCTRLC:
1171         FIXME( "Control VWIN32_DIOC_SIMCTRLC not implemented\n");
1172         retv = FALSE;
1173         break;
1174
1175     default:
1176         FIXME( "Unknown Control %ld\n", dwIoControlCode);
1177         retv = FALSE;
1178         break;
1179     }
1180
1181     return retv;
1182 }
1183
1184 /* this is the main multimedia device loader */
1185 static BOOL DeviceIo_MMDEVLDR(DWORD dwIoControlCode, 
1186                               LPVOID lpvInBuffer, DWORD cbInBuffer,
1187                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
1188                               LPDWORD lpcbBytesReturned,
1189                               LPOVERLAPPED lpOverlapped)
1190 {
1191         FIXME("(%ld,%p,%ld,%p,%ld,%p,%p): stub\n",
1192             dwIoControlCode,
1193             lpvInBuffer,cbInBuffer,
1194             lpvOutBuffer,cbOutBuffer,
1195             lpcbBytesReturned,
1196             lpOverlapped
1197         );
1198         switch (dwIoControlCode) {
1199         case 5:
1200                 /* Hmm. */
1201                 *(DWORD*)lpvOutBuffer=0;
1202                 *lpcbBytesReturned=4;
1203                 return TRUE;
1204         }
1205         return FALSE;
1206 }
1207 /* this is used by some Origin games */
1208 static BOOL DeviceIo_MONODEBG(DWORD dwIoControlCode, 
1209                               LPVOID lpvInBuffer, DWORD cbInBuffer,
1210                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
1211                               LPDWORD lpcbBytesReturned,
1212                               LPOVERLAPPED lpOverlapped)
1213 {
1214         switch (dwIoControlCode) {
1215         case 1: /* version */
1216                 *(LPDWORD)lpvOutBuffer = 0x20004; /* WC SecretOps */
1217                 break;
1218         case 9: /* debug output */
1219                 ERR("MONODEBG: %s\n",debugstr_a(lpvInBuffer));
1220                 break;
1221         default:
1222                 FIXME("(%ld,%p,%ld,%p,%ld,%p,%p): stub\n",
1223                         dwIoControlCode,
1224                         lpvInBuffer,cbInBuffer,
1225                         lpvOutBuffer,cbOutBuffer,
1226                         lpcbBytesReturned,
1227                         lpOverlapped
1228                 );
1229                 break;
1230         }
1231         return TRUE;
1232 }
1233 /* pccard */
1234 static BOOL DeviceIo_PCCARD (DWORD dwIoControlCode, 
1235                               LPVOID lpvInBuffer, DWORD cbInBuffer,
1236                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
1237                               LPDWORD lpcbBytesReturned,
1238                               LPOVERLAPPED lpOverlapped)
1239 {
1240         switch (dwIoControlCode) {
1241         case 0x0000: /* PCCARD_Get_Version */
1242         case 0x0001: /* PCCARD_Card_Services */
1243         default:
1244                 FIXME( "(%ld,%p,%ld,%p,%ld,%p,%p): stub\n",
1245                         dwIoControlCode,
1246                         lpvInBuffer,cbInBuffer,
1247                         lpvOutBuffer,cbOutBuffer,
1248                         lpcbBytesReturned,
1249                         lpOverlapped
1250                 );
1251                 break;
1252         }
1253         return FALSE;
1254 }
1255
1256 /***********************************************************************
1257  *              OpenVxDHandle (KERNEL32.@)
1258  */
1259 DWORD   WINAPI  OpenVxDHandle(DWORD pmt)
1260 {
1261         FIXME( "(0x%08lx) stub!\n", pmt);
1262         return 0;
1263 }
1264
1265 static BOOL DeviceIo_HASP(DWORD dwIoControlCode, LPVOID lpvInBuffer, DWORD cbInBuffer,
1266                               LPVOID lpvOutBuffer, DWORD cbOutBuffer,
1267                               LPDWORD lpcbBytesReturned,
1268                               LPOVERLAPPED lpOverlapped)
1269 {
1270     BOOL retv = TRUE;
1271         FIXME("(%ld,%p,%ld,%p,%ld,%p,%p): stub\n",
1272                         dwIoControlCode,
1273                         lpvInBuffer,cbInBuffer,
1274                         lpvOutBuffer,cbOutBuffer,
1275                         lpcbBytesReturned,
1276                         lpOverlapped);
1277
1278     return retv;
1279 }
1280